Bień Damian, Michalczuk Monika, Łysek-Gładysińska Małgorzata, Jóźwik Artur, Wieczorek Anna, Matuszewski Arkadiusz, Kinsner Misza, Konieczka Paweł
Department of Animal Breeding, Institute of Animal Sciences, Warsaw University of Life Sciences WULS-SGGW, 02-786 Warszawa, Poland.
Division of Medical Biology, Institute of Biology, University of Jan Kochanowski, Uniwersytecka 7, 25-406 Kielce, Poland.
Antioxidants (Basel). 2023 Apr 10;12(4):905. doi: 10.3390/antiox12040905.
The poultry industry is looking for the most effective sources of selenium (Se) for commercial use. Over the past five years, nano-Se has attracted a great deal of attention in terms of its production, characterisation and possible application in poultry production. The objective of this study was to evaluate the effects of dietary levels of inorganic and organic Se, selenised yeast and nano forms of selenium on breast meat quality, liver and blood markers of antioxidants, the ultrastructure of tissue and the health status of chickens. A total of 300 one-day-old chicks Ross 308 were divided into 4 experimental groups, in 5 replications, with 15 birds per replication. Birds were fed the following treatments: a standard commercial diet containing inorganic Se in the form of inorganic Se at the level of 0.3 mg/kg diet and an experimental diet with an increased level of Se (0.5 mg/kg diet). The use of other forms of Se (nano-Se) versus sodium selenate significantly influences ( ≤ 0.05) a higher collagen content and does not impair physico-chemical properties in the breast muscle or the growth performance of the chickens. In addition, the use of other forms of selenium at an increased dose versus sodium selenate affected ( ≤ 0.01) the elongation of sarcomeres in the pectoral muscle while reducing ( ≤ 0.01) mitochondrial damage in hepatocytes and improving ( ≤ 0.05) oxidative indices. The use of nano-Se at a dose of 0.5 mg/kg feed has high bioavailability and low toxicity without negatively affecting the growth performance and while improving breast muscle quality parameters and the health status of the chickens.
家禽业正在寻找商业用途中最有效的硒(Se)来源。在过去五年中,纳米硒在其生产、表征以及在家禽生产中的可能应用方面引起了极大关注。本研究的目的是评估日粮中无机硒和有机硒、硒化酵母及纳米形式的硒对鸡胸肉品质、肝脏和血液抗氧化指标、组织超微结构以及鸡健康状况的影响。总共300只1日龄罗斯308雏鸡被分为4个实验组,每组5个重复,每个重复15只鸡。给鸡饲喂以下日粮:一种标准商业日粮,含有0.3毫克/千克日粮水平的无机形式的无机硒,以及一种硒水平增加(0.5毫克/千克日粮)的实验日粮。与硒酸钠相比,使用其他形式的硒(纳米硒)显著影响(≤0.05)更高的胶原蛋白含量,且不会损害鸡胸肉的理化性质或鸡的生长性能。此外,与硒酸钠相比,增加剂量使用其他形式的硒会影响(≤0.01)胸肌中肌节的伸长,同时减少(≤0.01)肝细胞中的线粒体损伤并改善(≤0.05)氧化指标。以0.5毫克/千克饲料的剂量使用纳米硒具有高生物利用度和低毒性,不会对生长性能产生负面影响,同时可改善鸡胸肉品质参数和鸡的健康状况。